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Heat transfer characteristics in a large-scale bubbling fluidized bed with immersed horizontal tube bundles

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  • Blaszczuk, Artur
  • Pogorzelec, Michal
  • Shimizu, Tadaaki

Abstract

This work investigates heat transfer characteristics in a bubbling fluidized bed with a submerged superheater tube bundles under conditions of an integrated fluidized bed heat exchanger (Integrated Recycle Heat Exchanger, Intrextm) of a large-scale circulating fluidized bed boiler. The effect of mean bed particle size, normalized suspension density, and fluidizing number on the average heat transfer coefficient between the immersed horizontal tubes and the bed was evaluated. The physical parameters of bed particles and fluidizing air in the external heat exchanger were measured at different CFB unit loads. Bubble fraction and contacting time of emulsion phase on the heat transfer surface were calculated on the basis of operating data of fluidized bed heat exchanger. A mechanistic heat transfer model was used to predict the heat transfer coefficient. Depending on emulsion density and the local dynamics of gas and bed particles, the average heat transfer coefficient (havg) varied in a range of 255–381 W/(m2K), showing an increasing trend with the decrease in bed particle size. Moreover, havg decreased with increasing emulsion contact time on the tube surface with the reduction of the solids mixing. Obtained results were compared with literature data.

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  • Blaszczuk, Artur & Pogorzelec, Michal & Shimizu, Tadaaki, 2018. "Heat transfer characteristics in a large-scale bubbling fluidized bed with immersed horizontal tube bundles," Energy, Elsevier, vol. 162(C), pages 10-19.
  • Handle: RePEc:eee:energy:v:162:y:2018:i:c:p:10-19
    DOI: 10.1016/j.energy.2018.08.008
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    References listed on IDEAS

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    1. Bolea, Irene & Romeo, Luis M. & Pallarés, David, 2012. "The role of external heat exchangers in oxy-fuel circulating fluidized bed," Applied Energy, Elsevier, vol. 94(C), pages 215-223.
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    5. Li, Dongfang & Kim, Kyeongho & Kim, Minwoo & Zeng, Yijie & Yang, Zhongzhi & Lee, Sangho & Lu, Xiaofeng & Jeon, Chung-Hwan, 2021. "Effects of particle size on bed-to-surface heat transfer in bubbling fluidized bed heat exchangers of 550 MWe ultra-supercritical CFB boiler," Energy, Elsevier, vol. 222(C).
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    7. Miao Miao & Man Zhang & Hao Kong & Tuo Zhou & Xinhua Yang & Hairui Yang, 2021. "Progress in Catalytic Decomposition and Removal of N 2 O in Fluidized Bed," Energies, MDPI, vol. 14(19), pages 1-14, September.
    8. Judt, W. & Ciupek, B. & Urbaniak, R., 2020. "Numerical study of a heat transfer process in a low power heating boiler equipped with afterburning chamber," Energy, Elsevier, vol. 196(C).
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    10. Li, Dongfang & Qu, Xiaoxiao & Li, Junjie & Hong, Suck Won & Jeon, Chung-hwan, 2022. "Microstructural development of product layer during limestone sulfation and its relationship to agglomeration in large-scale CFB boiler," Energy, Elsevier, vol. 238(PC).
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    13. Ocanha, Enzo Schlottfeldt & Zinani, Flávia Schwarz Franceschini & Modolo, Regina Celia Espinosa & Santos, Fernando Almeida, 2020. "Assesment of the effects of chemical and physical parameters in the fluidization of biomass and sand binary mixtures through statistical analysis," Energy, Elsevier, vol. 190(C).
    14. Miao, Miao & Deng, Boyu & Kong, Hao & Yang, Hairui & Lyu, Junfu & Jiang, Xiaoguo & Zhang, Man, 2021. "Effects of volatile matter and oxygen concentration on combustion characteristics of coal in an oxygen-enriched fluidized bed," Energy, Elsevier, vol. 220(C).
    15. Li, Dongfang & Ke, Xiwei & Zhang, Man & Yang, Hairui & Jung, Sungmook & Ahn, Seokgi & Jeon, Chung-Hwan, 2020. "A comprehensive mass balance model of a 550 MWe ultra-supercritical CFB boiler with internal circulation," Energy, Elsevier, vol. 206(C).
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